Research Institute on Addictions, University at Buffalo, 1021 Main Street, Buffalo, NY 14203, USA.
J Physiol. 2012 Nov 15;590(22):5795-808. doi: 10.1113/jphysiol.2012.238659. Epub 2012 Sep 3.
Glucocorticoids play a critical role in the modulation of stress responses by controlling the function of the serotonin (5-HT) system. However, the precise effects of glucocorticoids on the excitability of dorsal raphe (DR) 5-HT neurons remain unknown. In this study, we investigated the effects of glucocorticoids on excitatory synaptic transmission to putative DR 5-HT neurons. We found that corticosterone or the synthetic glucocorticoid agonist dexamethasone rapidly suppressed glutamatergic synaptic transmission to DR 5-HT neurons by inhibiting glutamate release in the DR. This inhibitory effect was mimicked by membrane-impermeable glucocorticoids, indicating the involvement of membrane-located corticosteroid receptors. The glucocorticoid-induced inhibition of glutamatergic transmission was mediated by the activation of postsynaptic G-protein-coupled receptors and signalled by retrograde endocannabinoid (eCB) messengers. Examination of the downstream mechanisms revealed that glucocorticoids enhance eCB signalling via an inhibition of cyclooxygenase-2. Together, these findings unravel a novel mechanism by which glucocorticoids control the excitability of DR 5-HT neurons and provide new insight into the rapid effects of stress hormones on the function of the 5-HT system.
糖皮质激素通过控制 5-羟色胺(5-HT)系统的功能,在调节应激反应中起着关键作用。然而,糖皮质激素对背侧中缝核(DR)5-HT 神经元兴奋性的确切影响仍不清楚。在这项研究中,我们研究了糖皮质激素对推定的 DR 5-HT 神经元兴奋性突触传递的影响。我们发现,皮质酮或合成的糖皮质激素激动剂地塞米松通过抑制 DR 中的谷氨酸释放,迅速抑制谷氨酸能突触传递到 DR 5-HT 神经元。这种抑制作用可被膜不可渗透的糖皮质激素模拟,表明涉及膜定位的皮质激素受体。糖皮质激素诱导的谷氨酸传递抑制是通过激活突触后 G 蛋白偶联受体介导的,并通过逆行内源性大麻素(eCB)信使发出信号。对下游机制的研究表明,糖皮质激素通过抑制环氧化酶-2 增强 eCB 信号。总之,这些发现揭示了糖皮质激素控制 DR 5-HT 神经元兴奋性的新机制,并为应激激素对 5-HT 系统功能的快速作用提供了新的见解。